Huertas Pablo, García-Rubio María L, Wellinger Ralf E, Luna Rosa, Aguilera Andrés
Departamento de Genética, Facultad de Biología, Universidad de Sevilla, Avd. Reina Mercedes 6, 41012 Sevilla, Spain.
Mol Cell Biol. 2006 Oct;26(20):7451-65. doi: 10.1128/MCB.00684-06. Epub 2006 Aug 14.
THO/TREX, a conserved eukaryotic protein complex, is a key player at the interface between transcription and mRNP metabolism. The lack of a functional THO complex impairs transcription, leads to transcription-dependent hyperrecombination, causes mRNA export defects and fast mRNA decay, and retards replication fork progression in a transcription-dependent manner. To get more insight into the interconnection between mRNP biogenesis and genomic instability, we searched for HPR1 mutations that differentially affect gene expression and recombination. We isolated mutants that were barely affected in gene expression but exhibited a hyperrecombination phenotype. In addition, we isolated a mutant, hpr1-101, with a strong defect in transcription, as observed for lacZ, and a general defect in mRNA export that did not display a relevant hyperrecombination phenotype. In THO single-null mutants, but not in the hpr1 point mutants studied, THO and its subunits were unstable. Interestingly, in contrast to hyperrecombinant null mutants, hpr1-101 did not cause retardation of replication fork progression. Transcription and mRNP biogenesis can therefore be impaired by THO/TREX dysfunction without increasing recombination, suggesting that it is possible to separate the mechanism(s) responsible for mRNA biogenesis defects from the further step of triggering transcription-dependent recombination.
THO/TREX是一种保守的真核蛋白复合物,是转录与mRNA核糖核蛋白(mRNP)代谢之间界面的关键参与者。缺乏功能性的THO复合物会损害转录,导致转录依赖性的超重组,引起mRNA输出缺陷和mRNA快速降解,并以转录依赖性方式阻碍复制叉的进展。为了更深入了解mRNP生物发生与基因组不稳定性之间的联系,我们寻找了对基因表达和重组有不同影响的HPR1突变。我们分离出了在基因表达方面几乎没有受到影响但表现出超重组表型的突变体。此外,我们分离出了一个突变体hpr1-101,它在转录方面存在严重缺陷,如对lacZ的观察结果所示,并且在mRNA输出方面存在普遍缺陷,但没有表现出相关的超重组表型。在THO单基因缺失突变体中,而不是在所研究的hpr1点突变体中,THO及其亚基是不稳定的。有趣的是,与超重组的基因缺失突变体不同,hpr1-101不会导致复制叉进展的延迟。因此,THO/TREX功能障碍可损害转录和mRNP生物发生,而不会增加重组,这表明有可能将导致mRNA生物发生缺陷的机制与触发转录依赖性重组的进一步步骤分开。